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xdr_rec.c revision 1.10
      1 /*	$NetBSD: xdr_rec.c,v 1.10 1998/02/11 11:53:00 lukem Exp $	*/
      2 
      3 /*
      4  * Sun RPC is a product of Sun Microsystems, Inc. and is provided for
      5  * unrestricted use provided that this legend is included on all tape
      6  * media and as a part of the software program in whole or part.  Users
      7  * may copy or modify Sun RPC without charge, but are not authorized
      8  * to license or distribute it to anyone else except as part of a product or
      9  * program developed by the user.
     10  *
     11  * SUN RPC IS PROVIDED AS IS WITH NO WARRANTIES OF ANY KIND INCLUDING THE
     12  * WARRANTIES OF DESIGN, MERCHANTIBILITY AND FITNESS FOR A PARTICULAR
     13  * PURPOSE, OR ARISING FROM A COURSE OF DEALING, USAGE OR TRADE PRACTICE.
     14  *
     15  * Sun RPC is provided with no support and without any obligation on the
     16  * part of Sun Microsystems, Inc. to assist in its use, correction,
     17  * modification or enhancement.
     18  *
     19  * SUN MICROSYSTEMS, INC. SHALL HAVE NO LIABILITY WITH RESPECT TO THE
     20  * INFRINGEMENT OF COPYRIGHTS, TRADE SECRETS OR ANY PATENTS BY SUN RPC
     21  * OR ANY PART THEREOF.
     22  *
     23  * In no event will Sun Microsystems, Inc. be liable for any lost revenue
     24  * or profits or other special, indirect and consequential damages, even if
     25  * Sun has been advised of the possibility of such damages.
     26  *
     27  * Sun Microsystems, Inc.
     28  * 2550 Garcia Avenue
     29  * Mountain View, California  94043
     30  */
     31 
     32 #include <sys/cdefs.h>
     33 #if defined(LIBC_SCCS) && !defined(lint)
     34 #if 0
     35 static char *sccsid = "@(#)xdr_rec.c 1.21 87/08/11 Copyr 1984 Sun Micro";
     36 static char *sccsid = "@(#)xdr_rec.c	2.2 88/08/01 4.0 RPCSRC";
     37 #else
     38 __RCSID("$NetBSD: xdr_rec.c,v 1.10 1998/02/11 11:53:00 lukem Exp $");
     39 #endif
     40 #endif
     41 
     42 /*
     43  * xdr_rec.c, Implements TCP/IP based XDR streams with a "record marking"
     44  * layer above tcp (for rpc's use).
     45  *
     46  * Copyright (C) 1984, Sun Microsystems, Inc.
     47  *
     48  * These routines interface XDRSTREAMS to a tcp/ip connection.
     49  * There is a record marking layer between the xdr stream
     50  * and the tcp transport level.  A record is composed on one or more
     51  * record fragments.  A record fragment is a thirty-two bit header followed
     52  * by n bytes of data, where n is contained in the header.  The header
     53  * is represented as a htonl(u_int32_t).  Thegh order bit encodes
     54  * whether or not the fragment is the last fragment of the record
     55  * (1 => fragment is last, 0 => more fragments to follow.
     56  * The other 31 bits encode the byte length of the fragment.
     57  */
     58 
     59 #include "namespace.h"
     60 
     61 #include <sys/types.h>
     62 
     63 #include <netinet/in.h>
     64 
     65 #include <err.h>
     66 #include <stdio.h>
     67 #include <stdlib.h>
     68 #include <string.h>
     69 
     70 #include <rpc/types.h>
     71 #include <rpc/xdr.h>
     72 
     73 #ifdef __weak_alias
     74 __weak_alias(xdrrec_create,_xdrrec_create);
     75 __weak_alias(xdrrec_endofrecord,_xdrrec_endofrecord);
     76 __weak_alias(xdrrec_eof,_xdrrec_eof);
     77 __weak_alias(xdrrec_skiprecord,_xdrrec_skiprecord);
     78 #endif
     79 
     80 static bool_t	xdrrec_getlong __P((XDR *, int32_t *));
     81 static bool_t	xdrrec_putlong __P((XDR *, int32_t *));
     82 static bool_t	xdrrec_getbytes __P((XDR *, caddr_t, u_int32_t));
     83 
     84 static bool_t	xdrrec_putbytes __P((XDR *, caddr_t, u_int32_t));
     85 static u_int32_t xdrrec_getpos __P((XDR *));
     86 static bool_t	xdrrec_setpos __P((XDR *, u_int32_t));
     87 static int32_t *xdrrec_inline __P((XDR *, u_int32_t));
     88 static void	xdrrec_destroy __P((XDR *));
     89 
     90 static struct  xdr_ops xdrrec_ops = {
     91 	xdrrec_getlong,
     92 	xdrrec_putlong,
     93 	xdrrec_getbytes,
     94 	xdrrec_putbytes,
     95 	xdrrec_getpos,
     96 	xdrrec_setpos,
     97 	xdrrec_inline,
     98 	xdrrec_destroy
     99 };
    100 
    101 /*
    102  * A record is composed of one or more record fragments.
    103  * A record fragment is a two-byte header followed by zero to
    104  * 2**32-1 bytes.  The header is treated as a long unsigned and is
    105  * encode/decoded to the network via htonl/ntohl.  The low order 31 bits
    106  * are a byte count of the fragment.  The highest order bit is a boolean:
    107  * 1 => this fragment is the last fragment of the record,
    108  * 0 => this fragment is followed by more fragment(s).
    109  *
    110  * The fragment/record machinery is not general;  it is constructed to
    111  * meet the needs of xdr and rpc based on tcp.
    112  */
    113 
    114 #define LAST_FRAG ((u_int32_t)(1 << 31))
    115 
    116 typedef struct rec_strm {
    117 	caddr_t tcp_handle;
    118 	caddr_t the_buffer;
    119 	/*
    120 	 * out-goung bits
    121 	 */
    122 	int (*writeit) __P((caddr_t, caddr_t, u_int32_t));
    123 	caddr_t out_base;	/* output buffer (points to frag header) */
    124 	caddr_t out_finger;	/* next output position */
    125 	caddr_t out_boundry;	/* data cannot up to this address */
    126 	u_int32_t *frag_header;	/* beginning of current fragment */
    127 	bool_t frag_sent;	/* true if buffer sent in middle of record */
    128 	/*
    129 	 * in-coming bits
    130 	 */
    131 	int (*readit) __P((caddr_t , caddr_t , u_int32_t));
    132 	u_int32_t in_size;	/* fixed size of the input buffer */
    133 	caddr_t in_base;
    134 	caddr_t in_finger;	/* location of next byte to be had */
    135 	caddr_t in_boundry;	/* can read up to this location */
    136 	u_int32_t fbtbc;	/* fragment bytes to be consumed */
    137 	bool_t last_frag;
    138 	u_int32_t sendsize;
    139 	u_int32_t recvsize;
    140 } RECSTREAM;
    141 
    142 static u_int32_t fix_buf_size __P((u_int32_t));
    143 static bool_t	flush_out __P((RECSTREAM *, bool_t));
    144 static bool_t	fill_input_buf __P((RECSTREAM *));
    145 static bool_t	get_input_bytes __P((RECSTREAM *, caddr_t, int));
    146 static bool_t	set_input_fragment __P((RECSTREAM *));
    147 static bool_t	skip_input_bytes __P((RECSTREAM *, int32_t));
    148 
    149 
    150 /*
    151  * Create an xdr handle for xdrrec
    152  * xdrrec_create fills in xdrs.  Sendsize and recvsize are
    153  * send and recv buffer sizes (0 => use default).
    154  * tcp_handle is an opaque handle that is passed as the first parameter to
    155  * the procedures readit and writeit.  Readit and writeit are read and
    156  * write respectively.   They are like the system
    157  * calls expect that they take an opaque handle rather than an fd.
    158  */
    159 void
    160 xdrrec_create(xdrs, sendsize, recvsize, tcp_handle, readit, writeit)
    161 	XDR *xdrs;
    162 	u_int32_t sendsize;
    163 	u_int32_t recvsize;
    164 	caddr_t tcp_handle;
    165 			/* like read, but pass it a tcp_handle, not sock */
    166 	int (*readit) __P((caddr_t, caddr_t, u_int32_t));
    167 			/* like write, but pass it a tcp_handle, not sock */
    168 	int (*writeit) __P((caddr_t, caddr_t, u_int32_t));
    169 {
    170 	RECSTREAM *rstrm =
    171 		(RECSTREAM *)mem_alloc(sizeof(RECSTREAM));
    172 
    173 	if (rstrm == NULL) {
    174 		warnx("xdrrec_create: out of memory");
    175 		/*
    176 		 *  This is bad.  Should rework xdrrec_create to
    177 		 *  return a handle, and in this case return NULL
    178 		 */
    179 		return;
    180 	}
    181 	/*
    182 	 * adjust sizes and allocate buffer quad byte aligned
    183 	 */
    184 	rstrm->sendsize = sendsize = fix_buf_size(sendsize);
    185 	rstrm->recvsize = recvsize = fix_buf_size(recvsize);
    186 	rstrm->the_buffer =
    187 	    mem_alloc((size_t)(sendsize + recvsize + BYTES_PER_XDR_UNIT));
    188 	if (rstrm->the_buffer == NULL) {
    189 		warnx("xdrrec_create: out of memory");
    190 		return;
    191 	}
    192 	for (rstrm->out_base = rstrm->the_buffer;
    193 		(u_int32_t)rstrm->out_base % BYTES_PER_XDR_UNIT != 0;
    194 		rstrm->out_base++);
    195 	rstrm->in_base = rstrm->out_base + sendsize;
    196 	/*
    197 	 * now the rest ...
    198 	 */
    199 	xdrs->x_ops = &xdrrec_ops;
    200 	xdrs->x_private = (caddr_t)rstrm;
    201 	rstrm->tcp_handle = tcp_handle;
    202 	rstrm->readit = readit;
    203 	rstrm->writeit = writeit;
    204 	rstrm->out_finger = rstrm->out_boundry = rstrm->out_base;
    205 	rstrm->frag_header = (u_int32_t *)rstrm->out_base;
    206 	rstrm->out_finger += sizeof(u_int32_t);
    207 	rstrm->out_boundry += sendsize;
    208 	rstrm->frag_sent = FALSE;
    209 	rstrm->in_size = recvsize;
    210 	rstrm->in_boundry = rstrm->in_base;
    211 	rstrm->in_finger = (rstrm->in_boundry += recvsize);
    212 	rstrm->fbtbc = 0;
    213 	rstrm->last_frag = TRUE;
    214 }
    215 
    216 
    217 /*
    218  * The routines defined below are the xdr ops which will go into the
    219  * xdr handle filled in by xdrrec_create.
    220  */
    221 
    222 static bool_t
    223 xdrrec_getlong(xdrs, lp)
    224 	XDR *xdrs;
    225 	int32_t *lp;
    226 {
    227 	RECSTREAM *rstrm = (RECSTREAM *)(xdrs->x_private);
    228 	int32_t *buflp = (int32_t *)(rstrm->in_finger);
    229 	int32_t mylong;
    230 
    231 	/* first try the inline, fast case */
    232 	if ((rstrm->fbtbc >= sizeof(int32_t))
    233 	    && (((int32_t)rstrm->in_boundry - (int32_t)buflp)
    234 		>= sizeof(int32_t))) {
    235 		*lp = (int32_t)ntohl((u_int32_t)(*buflp));
    236 		rstrm->fbtbc -= sizeof(int32_t);
    237 		rstrm->in_finger += sizeof(int32_t);
    238 	} else {
    239 		if (! xdrrec_getbytes(xdrs, (caddr_t)&mylong, sizeof(int32_t)))
    240 			return (FALSE);
    241 		*lp = (int32_t)ntohl((u_int32_t)mylong);
    242 	}
    243 	return (TRUE);
    244 }
    245 
    246 static bool_t
    247 xdrrec_putlong(xdrs, lp)
    248 	XDR *xdrs;
    249 	int32_t *lp;
    250 {
    251 	RECSTREAM *rstrm = (RECSTREAM *)(xdrs->x_private);
    252 	int32_t *dest_lp = ((int32_t *)(rstrm->out_finger));
    253 
    254 	if ((rstrm->out_finger += sizeof(int32_t)) > rstrm->out_boundry) {
    255 		/*
    256 		 * this case should almost never happen so the code is
    257 		 * inefficient
    258 		 */
    259 		rstrm->out_finger -= sizeof(int32_t);
    260 		rstrm->frag_sent = TRUE;
    261 		if (! flush_out(rstrm, FALSE))
    262 			return (FALSE);
    263 		dest_lp = ((int32_t *)(rstrm->out_finger));
    264 		rstrm->out_finger += sizeof(int32_t);
    265 	}
    266 	*dest_lp = (int32_t)htonl((u_int32_t)(*lp));
    267 	return (TRUE);
    268 }
    269 
    270 static bool_t  /* must manage buffers, fragments, and records */
    271 xdrrec_getbytes(xdrs, addr, len)
    272 	XDR *xdrs;
    273 	caddr_t addr;
    274 	u_int32_t len;
    275 {
    276 	RECSTREAM *rstrm = (RECSTREAM *)(xdrs->x_private);
    277 	int current;
    278 
    279 	while (len > 0) {
    280 		current = rstrm->fbtbc;
    281 		if (current == 0) {
    282 			if (rstrm->last_frag)
    283 				return (FALSE);
    284 			if (! set_input_fragment(rstrm))
    285 				return (FALSE);
    286 			continue;
    287 		}
    288 		current = (len < current) ? len : current;
    289 		if (! get_input_bytes(rstrm, addr, current))
    290 			return (FALSE);
    291 		addr += current;
    292 		rstrm->fbtbc -= current;
    293 		len -= current;
    294 	}
    295 	return (TRUE);
    296 }
    297 
    298 static bool_t
    299 xdrrec_putbytes(xdrs, addr, len)
    300 	XDR *xdrs;
    301 	caddr_t addr;
    302 	u_int32_t len;
    303 {
    304 	RECSTREAM *rstrm = (RECSTREAM *)(xdrs->x_private);
    305 	int32_t current;
    306 
    307 	while (len > 0) {
    308 		current = (u_int32_t)rstrm->out_boundry -
    309 		    (u_int32_t)rstrm->out_finger;
    310 		current = (len < current) ? len : current;
    311 		memmove(rstrm->out_finger, addr, current);
    312 		rstrm->out_finger += current;
    313 		addr += current;
    314 		len -= current;
    315 		if (rstrm->out_finger == rstrm->out_boundry) {
    316 			rstrm->frag_sent = TRUE;
    317 			if (! flush_out(rstrm, FALSE))
    318 				return (FALSE);
    319 		}
    320 	}
    321 	return (TRUE);
    322 }
    323 
    324 static u_int32_t
    325 xdrrec_getpos(xdrs)
    326 	XDR *xdrs;
    327 {
    328 	RECSTREAM *rstrm = (RECSTREAM *)xdrs->x_private;
    329 	int32_t pos;
    330 
    331 	pos = lseek((off_t)(int32_t)rstrm->tcp_handle, 0, 1);
    332 	if (pos != -1)
    333 		switch (xdrs->x_op) {
    334 
    335 		case XDR_ENCODE:
    336 			pos += rstrm->out_finger - rstrm->out_base;
    337 			break;
    338 
    339 		case XDR_DECODE:
    340 			pos -= rstrm->in_boundry - rstrm->in_finger;
    341 			break;
    342 
    343 		default:
    344 			pos = (u_int32_t) -1;	/* XXX */
    345 			break;
    346 		}
    347 	return ((u_int32_t) pos);
    348 }
    349 
    350 static bool_t
    351 xdrrec_setpos(xdrs, pos)
    352 	XDR *xdrs;
    353 	u_int32_t pos;
    354 {
    355 	RECSTREAM *rstrm = (RECSTREAM *)xdrs->x_private;
    356 	u_int32_t currpos = xdrrec_getpos(xdrs);
    357 	int delta = currpos - pos;
    358 	caddr_t newpos;
    359 
    360 	if ((int)currpos != -1)
    361 		switch (xdrs->x_op) {
    362 
    363 		case XDR_ENCODE:
    364 			newpos = rstrm->out_finger - delta;
    365 			if ((newpos > (caddr_t)(rstrm->frag_header)) &&
    366 				(newpos < rstrm->out_boundry)) {
    367 				rstrm->out_finger = newpos;
    368 				return (TRUE);
    369 			}
    370 			break;
    371 
    372 		case XDR_DECODE:
    373 			newpos = rstrm->in_finger - delta;
    374 			if ((delta < (int)(rstrm->fbtbc)) &&
    375 				(newpos <= rstrm->in_boundry) &&
    376 				(newpos >= rstrm->in_base)) {
    377 				rstrm->in_finger = newpos;
    378 				rstrm->fbtbc -= delta;
    379 				return (TRUE);
    380 			}
    381 			break;
    382 
    383 		case XDR_FREE:
    384 			break;
    385 		}
    386 	return (FALSE);
    387 }
    388 
    389 static int32_t *
    390 xdrrec_inline(xdrs, len)
    391 	XDR *xdrs;
    392 	u_int32_t len;
    393 {
    394 	RECSTREAM *rstrm = (RECSTREAM *)xdrs->x_private;
    395 	int32_t *buf = NULL;
    396 
    397 	switch (xdrs->x_op) {
    398 
    399 	case XDR_ENCODE:
    400 		if ((rstrm->out_finger + len) <= rstrm->out_boundry) {
    401 			buf = (int32_t *) rstrm->out_finger;
    402 			rstrm->out_finger += len;
    403 		}
    404 		break;
    405 
    406 	case XDR_DECODE:
    407 		if ((len <= rstrm->fbtbc) &&
    408 			((rstrm->in_finger + len) <= rstrm->in_boundry)) {
    409 			buf = (int32_t *) rstrm->in_finger;
    410 			rstrm->fbtbc -= len;
    411 			rstrm->in_finger += len;
    412 		}
    413 		break;
    414 
    415 	case XDR_FREE:
    416 		break;
    417 	}
    418 	return (buf);
    419 }
    420 
    421 static void
    422 xdrrec_destroy(xdrs)
    423 	XDR *xdrs;
    424 {
    425 	RECSTREAM *rstrm = (RECSTREAM *)xdrs->x_private;
    426 
    427 	mem_free(rstrm->the_buffer,
    428 		rstrm->sendsize + rstrm->recvsize + BYTES_PER_XDR_UNIT);
    429 	mem_free(rstrm, sizeof(RECSTREAM));
    430 }
    431 
    432 
    433 /*
    434  * Exported routines to manage xdr records
    435  */
    436 
    437 /*
    438  * Before reading (deserializing from the stream, one should always call
    439  * this procedure to guarantee proper record alignment.
    440  */
    441 bool_t
    442 xdrrec_skiprecord(xdrs)
    443 	XDR *xdrs;
    444 {
    445 	RECSTREAM *rstrm = (RECSTREAM *)(xdrs->x_private);
    446 
    447 	while (rstrm->fbtbc > 0 || (! rstrm->last_frag)) {
    448 		if (! skip_input_bytes(rstrm, rstrm->fbtbc))
    449 			return (FALSE);
    450 		rstrm->fbtbc = 0;
    451 		if ((! rstrm->last_frag) && (! set_input_fragment(rstrm)))
    452 			return (FALSE);
    453 	}
    454 	rstrm->last_frag = FALSE;
    455 	return (TRUE);
    456 }
    457 
    458 /*
    459  * Look ahead fuction.
    460  * Returns TRUE iff there is no more input in the buffer
    461  * after consuming the rest of the current record.
    462  */
    463 bool_t
    464 xdrrec_eof(xdrs)
    465 	XDR *xdrs;
    466 {
    467 	RECSTREAM *rstrm = (RECSTREAM *)(xdrs->x_private);
    468 
    469 	while (rstrm->fbtbc > 0 || (! rstrm->last_frag)) {
    470 		if (! skip_input_bytes(rstrm, rstrm->fbtbc))
    471 			return (TRUE);
    472 		rstrm->fbtbc = 0;
    473 		if ((! rstrm->last_frag) && (! set_input_fragment(rstrm)))
    474 			return (TRUE);
    475 	}
    476 	if (rstrm->in_finger == rstrm->in_boundry)
    477 		return (TRUE);
    478 	return (FALSE);
    479 }
    480 
    481 /*
    482  * The client must tell the package when an end-of-record has occurred.
    483  * The second paraemters tells whether the record should be flushed to the
    484  * (output) tcp stream.  (This let's the package support batched or
    485  * pipelined procedure calls.)  TRUE => immmediate flush to tcp connection.
    486  */
    487 bool_t
    488 xdrrec_endofrecord(xdrs, sendnow)
    489 	XDR *xdrs;
    490 	bool_t sendnow;
    491 {
    492 	RECSTREAM *rstrm = (RECSTREAM *)(xdrs->x_private);
    493 	u_int32_t len;  /* fragment length */
    494 
    495 	if (sendnow || rstrm->frag_sent ||
    496 		((u_int32_t)rstrm->out_finger + sizeof(u_int32_t) >=
    497 		(u_int32_t)rstrm->out_boundry)) {
    498 		rstrm->frag_sent = FALSE;
    499 		return (flush_out(rstrm, TRUE));
    500 	}
    501 	len = (u_int32_t)(rstrm->out_finger) - (u_long)(rstrm->frag_header) -
    502 	   sizeof(u_int32_t);
    503 	*(rstrm->frag_header) = htonl((u_int32_t)len | LAST_FRAG);
    504 	rstrm->frag_header = (u_int32_t *)rstrm->out_finger;
    505 	rstrm->out_finger += sizeof(u_int32_t);
    506 	return (TRUE);
    507 }
    508 
    509 
    510 /*
    511  * Internal useful routines
    512  */
    513 static bool_t
    514 flush_out(rstrm, eor)
    515 	RECSTREAM *rstrm;
    516 	bool_t eor;
    517 {
    518 	u_int32_t eormask = (eor == TRUE) ? LAST_FRAG : 0;
    519 	u_int32_t len = (u_long)(rstrm->out_finger) -
    520 		(u_long)(rstrm->frag_header) - sizeof(u_int32_t);
    521 
    522 	*(rstrm->frag_header) = htonl(len | eormask);
    523 	len = (u_long)(rstrm->out_finger) - (u_long)(rstrm->out_base);
    524 	if ((*(rstrm->writeit))(rstrm->tcp_handle, rstrm->out_base, (int)len)
    525 		!= (int)len)
    526 		return (FALSE);
    527 	rstrm->frag_header = (u_int32_t *)rstrm->out_base;
    528 	rstrm->out_finger = (caddr_t)rstrm->out_base + sizeof(u_int32_t);
    529 	return (TRUE);
    530 }
    531 
    532 static bool_t  /* knows nothing about records!  Only about input buffers */
    533 fill_input_buf(rstrm)
    534 	RECSTREAM *rstrm;
    535 {
    536 	caddr_t where;
    537 	u_int32_t i;
    538 	long len;
    539 
    540 	where = rstrm->in_base;
    541 	i = (u_int32_t)rstrm->in_boundry % BYTES_PER_XDR_UNIT;
    542 	where += i;
    543 	len = rstrm->in_size - i;
    544 	if ((len = (*(rstrm->readit))(rstrm->tcp_handle, where, len)) == -1)
    545 		return (FALSE);
    546 	rstrm->in_finger = where;
    547 	where += len;
    548 	rstrm->in_boundry = where;
    549 	return (TRUE);
    550 }
    551 
    552 static bool_t  /* knows nothing about records!  Only about input buffers */
    553 get_input_bytes(rstrm, addr, len)
    554 	RECSTREAM *rstrm;
    555 	caddr_t addr;
    556 	int len;
    557 {
    558 	long current;
    559 
    560 	while (len > 0) {
    561 		current = (long)rstrm->in_boundry - (long)rstrm->in_finger;
    562 		if (current == 0) {
    563 			if (! fill_input_buf(rstrm))
    564 				return (FALSE);
    565 			continue;
    566 		}
    567 		current = (len < current) ? len : current;
    568 		memmove(addr, rstrm->in_finger, current);
    569 		rstrm->in_finger += current;
    570 		addr += current;
    571 		len -= current;
    572 	}
    573 	return (TRUE);
    574 }
    575 
    576 static bool_t  /* next two bytes of the input stream are treated as a header */
    577 set_input_fragment(rstrm)
    578 	RECSTREAM *rstrm;
    579 {
    580 	u_int32_t header;
    581 
    582 	if (! get_input_bytes(rstrm, (caddr_t)&header, sizeof(header)))
    583 		return (FALSE);
    584 	header = (long)ntohl(header);
    585 	rstrm->last_frag = ((header & LAST_FRAG) == 0) ? FALSE : TRUE;
    586 	rstrm->fbtbc = header & (~LAST_FRAG);
    587 	return (TRUE);
    588 }
    589 
    590 static bool_t  /* consumes input bytes; knows nothing about records! */
    591 skip_input_bytes(rstrm, cnt)
    592 	RECSTREAM *rstrm;
    593 	int32_t cnt;
    594 {
    595 	int32_t current;
    596 
    597 	while (cnt > 0) {
    598 		current = (u_int32_t)rstrm->in_boundry -
    599 		    (u_int32_t)rstrm->in_finger;
    600 		if (current == 0) {
    601 			if (! fill_input_buf(rstrm))
    602 				return (FALSE);
    603 			continue;
    604 		}
    605 		current = (cnt < current) ? cnt : current;
    606 		rstrm->in_finger += current;
    607 		cnt -= current;
    608 	}
    609 	return (TRUE);
    610 }
    611 
    612 static u_int32_t
    613 fix_buf_size(s)
    614 	u_int32_t s;
    615 {
    616 
    617 	if (s < 100)
    618 		s = 4000;
    619 	return (RNDUP(s));
    620 }
    621